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借助定量结构-选择性关系,通过铜催化的不对称共轭加成到β-取代环戊烯酮上形成季碳中心。

Formation of quaternary centres by copper catalysed asymmetric conjugate addition to β-substituted cyclopentenones with the aid of a quantitative structure-selectivity relationship.

作者信息

Ardkhean Ruchuta, Mortimore Mike, Paton Robert S, Fletcher Stephen P

机构信息

Department of Chemistry , Colorado State University , Fort Collins , Colorado 80523 , USA . Email:

Vertex Pharmaceuticals (Europe) Ltd , 86-88 Jubilee Avenue, Milton Park , Abingdon , Oxfordshire OX14 4RW , UK.

出版信息

Chem Sci. 2018 Feb 5;9(9):2628-2632. doi: 10.1039/c7sc05304e. eCollection 2018 Mar 7.

Abstract

A new asymmetric conjugate addition method was developed for β-substituted cyclopentenones to form quaternary centres using alkylzirconocene nucleophiles giving up to 97% yield and 92% ee. Key to the reaction's success was the design of suitable phosphoramidite ligands which was aided by a linear quantitative structure-selectivity relationship (QSSR). QSSR models were created from the ligand screening data (a total of 36 ligands) which revealed important electronic and steric requirements and led to the synthesis of more enantioselective ligands. DFT calculations of competing transition structures enable the interpretation of the electronic and steric terms present in the QSSR models.

摘要

开发了一种新的不对称共轭加成方法,用于β-取代环戊烯酮与烷基锆茂亲核试剂反应形成季碳中心,产率高达97%,对映体过量值(ee)高达92%。该反应成功的关键在于设计合适的亚磷酰胺配体,这借助于线性定量结构-选择性关系(QSSR)得以实现。QSSR模型是根据配体筛选数据(总共36种配体)建立的,这些数据揭示了重要的电子和空间要求,并促使合成了对映选择性更高的配体。对竞争过渡结构的密度泛函理论(DFT)计算能够解释QSSR模型中存在的电子和空间项。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81c3/5892328/1d308a601863/c7sc05304e-s1.jpg

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